Pubs by Program

This page lists the publications in the ESD Publications database, sorted by first author and year. To filter the list, select one or more Research Program(s) to filter the list, or else specify a publication year (e.g., 2011). Options to view other pages of the list are provided at the bottom of the page.

Publication Citation Research Program(s)
Canagaratna, M.R., J.L. Jimenez, J.H. Kroll, Q. Chen, S.H. Kessler, P. Massoli, L.H. Ruiz, E. Fortner, L.R. Williams, K.R. Wilson, J.D. Surratt, N.M. Donahue, J.T. Jayne, and D.R. Worsnop (2015), Elemental ratio measurements of organic compounds using aerosol mass spectrometry: characterization, improved calibration, and implications, Atmos. Chem. Phys., 15, 253-272, doi:10.5194/acp-15-253-2015. TCP
Carter, T.S., C.L. Heald, J.L. Jimenez, P. Campuzano-Jost, Y. Kondo, N. Moteki, J.P. Schwarz, C. Wiedinmyer, A.S. Darmenov, A.M. da Silva, and J.W. Kaiser (2020), How emissions uncertainty influences the distribution and radiative impacts of smoke from fires in North America, Atmos. Chem. Phys., 20, 2073-2097, doi:10.5194/acp-20-2073-2020. TCP
Carter, T.S., C.L. Heald, J.H. Kroll, E.C. Apel, D. Blake, M. Coggon, A. Edtbauer, G. Gkatzelis, R.S. Hornbrook, J. Peischl, E.Y. Pfannerstill, F. Piel, N.G. Reijrink, A. Ringsdorf, C. Warneke, J. Williams, A. Wisthaler, and L. Xu (2022), An improved representation of fire non-methane organic gases (NMOGs) in models: emissions to reactivity, Atmos. Chem. Phys., 22, 12093-12111, doi:10.5194/acp-22-12093-2022. TCP
Chai, T., G.R. Carmichael, Y. Tang, A. Sandu, M. Hardesty, P. Pilewskie, S. Whitlow, E.V. Browell, M.A. Avery, P. Nedéléc, J.T. Merrill, A.M. Thompson, and E. Williams (2007), Four-dimensional data assimilation experiments with International Consortium for Atmospheric Research on Transport and Transformation ozone measurements, J. Geophys. Res., 112, D12S15, doi:10.1029/2006JD007763. TCP
Chan, Y.-C., L. Jaeglé, P. Campuzano-Jost, D.C. Catling, J. Cole-Dai, V.I. Furdui, W.A. Jackson, J.L. Jimenez, D. Kim, A.E. Wedum, and B. Alexander (2023), Stratospheric gas-phase production alone cannot explain observations of atmospheric perchlorate on Earth, Geophys. Res. Lett., 50, org/10.1029/2023GL102745, doi:10.1029/2023GL102745. TCP
Chan, Y., L. Jaeglé, P. Campuzano Jost, D.C. Catling, V.I. Furdui, W.A. Jackson, J.L. Jimenez, D. Kim, and B. Alexander (2025), Global Model of Atmospheric Chlorate on Earth, J. Geophys. Res., e2024JD042162, doi:10.1029/2024JD042162. TCP
Chance, K. (2005), Ultraviolet and visible spectroscopy and spacfeborne remote sensing of the Earth's atmosphere, C. R. Physique, 6, 836-847, doi:10.1016/j.crhy.2005.07.010. ACMAP, TCP
Chance, K. (2006), Spectroscopic Measurements of Tropospheric Composition from Satellite Measurements in the Ultraviolet And Visible: Steps Toward Continuous Pollution Monitoring from Space, NATO Security through Science Series, 1-25. ACMAP, TCP
Chanl, K.R., J. Dean_Day, T.P. Bui, and S.W. Bowen (1998), Turbulence measurementsby the DC-8 meteorological measurement system, Geophys. Res. Lett., 25, 1355-1358. TCP
Chen, G., L.D. Ziemba, D.A. Chu, K.L. Thornhill, G.L. Schuster, E.L. Winstead, G.S. Diskin, R.A. Ferrare, S.P. Burton, S. Ismail, S.A. Kooi, A.H. Omar, D.L. Slusher, M.M. Kleb, J.S. Reid, C.H. Twohy, H. Zhang, and B.E. Anderson (2011), Observations of Saharan dust microphysical and optical properties from the Eastern Atlantic during NAMMA airborne field campaign, Atmos. Chem. Phys., 11, 723-740, doi:10.5194/acp-11-723-2011. ACMAP, RSP, TCP
Chen, Q., D.K. Farmer, L.V. Rizzo, T. Pauliquevis, M. Kuwata, T.G. Karl, A. Guenther, J.D. Allan, H. Coe, M.O. Andreae, U. Pöschl, J.L. Jimenez, P. Artaxo, and S.T. Martin (2015), Submicron particle mass concentrations and sources in the Amazonian wet season (AMAZE-08), Atmos. Chem. Phys., 15, 3687-3701, doi:10.5194/acp-15-3687-2015. TCP
Chen, Q., C.L. Heald, J.L. Jimenez, M.R. Canagaratna, Q. Zhang, L.-Y. He, X.-F. Huang, P. Campuzano-Jost, B.B. Palm, L. Poulain, M. Kuwata, S.T. Martin, J.P.D. Abbatt, A.K.Y. Lee, and J. Liggio (2015), Elemental composition of organic aerosol: The gap between ambient and laboratory measurements, Geophys. Res. Lett., 42, 4182-4189, doi:10.1002/2015GL063693. TCP
Chen, X., J. Wang, Y. Liu, X. Xu, Z. Cai, D. Yang, C.-X. Yan, and L. Feng (2017), Angular dependence of aerosol information content in CAPI/TanSat observation over land: Effect of polarization and synergy with A-train satellites, Remote Sensing of Environment, 196, 163-177, doi:10.1016/j.rse.2017.05.007. CCEP, RSP, TCP
Chen, X., D.B. Millet, H.B. Singh, A. Wisthaler, E.C. Apel, E.L. Atlas, D.R. Blake, I. Bourgeois, S.S. Brown, J.D. Crounse, J.A. de Gouw, F.M. Flocke, A. Fried, B.G. Heikes, R.S. Hornbrook, T. Mikoviny, K.-E. Min, M. Müller, J.A. Neuman, D.W. O’Sullivan, J. Peischl, G.G. Pfister, D. Richter, J.M. Roberts, T.B. Ryerson, S.R. Shertz, C.R. Thompson, V. Treadaway, P.R. Veres, J. Walega, C. Warneke, R.A. Washenfelder, P. Weibring, and B. Yuan (2019), On the sources and sinks of atmospheric VOCs: an integrated analysis of recent aircraft campaigns over North America, Atmos. Chem. Phys., 19, 9097-9123, doi:10.5194/acp-19-9097-2019. Atmospheric Composition, TCP
Chen, X., J. Wang, X. Xu, M. Zhou, H. Zhang, L.C. Garcia, P.R. Colarco, S.J. Janz, J. Yorks, M. McGill, J.S. Reid, M. de Graaf, and S. Kondragunta (2021), First retrieval of absorbing aerosol height over dark target using TROPOMI oxygen B band: Algorithm development and application for surface particulate matter estimates, Remote Sensing of Environment, 265, 112674, doi:10.1016/j.rse.2021.112674. ASP, MAP, Atmospheric Composition, ACMAP, TCP
Chen, X., X. Xu, J. Wang, and D.J. Diner (2021), Can multi-angular polarimetric measurements in the oxygen-A and B bands improve the retrieval of aerosol vertical distribution?, J. Quant. Spectrosc. Radiat. Transfer, 270, 107679, doi:10.1016/j.jqsrt.2021.107679. Atmospheric Composition, ACMAP, RSP, TCP
Chen, X., D.B. Millet, J.A. Neuman, P.R. Veres, E.A. Ray, R. Commane, B.C. Daube, K. McKain, J.P. Schwarz, J.M. Katich, K.D. Froyd, G.P. Schill, M.J. Kim, J.D. Crounse, H.M. Allen, E.C. Apel, R.S. Hornbrook, D.R. Blake, B.A. Nault, P. Campuzano-Jost, J.L. Jimenez, and J.E. Dibb (2021), HCOOH in the Remote Atmosphere: Constraints from Atmospheric Tomography (ATom) Airborne Observations, ACS Earth Space Chem., doi:10.1021/acsearthspacechem.1c00049. Atmospheric Composition, TCP
Chen, Y., L. Xu, T. Humphry, A.P.S. Hettiyadura, J. Ovadnevaite, S. Huang, L. Poulain, J.C. Schroder, P. Campuzano-Jost, J.L. Jimenez, H. Herrmann, C. O’Dowd, E.A. Stone, and N.L. Ng (2019), Cite This: Environ. Sci. Technol. 2019, 53, 5176−5186 pubs.acs.org/est Response of the Aerodyne Aerosol Mass Spectrometer to Inorganic Sulfates and Organosulfur Compounds: Applications in Field and Laboratory Measurements, Environ. Sci. Technol., doi:10.1021/acs.est.9b00884. TCP
Chen, Z., et al. (2021), Five years of variability in the global carbon cycle: comparing an estimate from the Orbiting Carbon Observatory-2 and process-based models, Environ. Res. Lett., 16, doi:10.1088/1748-9326/abfac1. TCP
Chen, Z., J. Liu, D.K. Henze, D.N. Huntzinger, K.C. Wells, S. Sitch, P. Friedlingstein, E. Joetzjer, V. Bastrikov, D.S. Goll, V. Haverd, A.K. Jain, E. Kato, S. Lienert, D.L. Lombardozzi, P.C. McGuire, J.R. Melton, J.E.M.S. Nabel, B. Poulter, H. Tian, A.J. Wiltshire, S. Zaehle, and S.M. Miller (2021), Linking global terrestrial CO2 fluxes and environmental drivers: inferences from the Orbiting Carbon Observatory 2 satellite and terrestrial biospheric models, Atmos. Chem. Phys., 21, 6663-6680, doi:10.5194/acp-21-6663-2021. TCP